"single-use assemblies"
Anti-NPM Rabbit Polyclonal Antibody (Cy3®)
Supplier: Bioss
Involved in diverse cellular processes such as ribosome biogenesis, centrosome duplication, protein chaperoning, histone assembly, cell proliferation, and regulation of tumor suppressors p53/TP53 and ARF. Binds ribosome presumably to drive ribosome nuclear export. Associated with nucleolar ribonucleoprotein structures and bind single-stranded nucleic acids. Acts as a chaperonin for the core histones H3, H2B and H4. Stimulates APEX1 endonuclease activity on apurinic/apyrimidinic (AP) double-stranded DNA but inhibits APEX1 endonuclease activity on AP single-stranded RNA. May exert a control of APEX1 endonuclease activity within nucleoli devoted to repair AP on rDNA and the removal of oxidized rRNA molecules. In concert with BRCA2, regulates centrosome duplication. Regulates centriole duplication: phosphorylation by PLK2 is able to trigger centriole replication. Negatively regulates the activation of EIF2AK2/PKR and suppresses apoptosis through inhibition of EIF2AK2/PKR autophosphorylation.
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Full face masks, Panoramasque
Supplier: HONEYWELL SÉCURITÉ
Panoramasque is a full face mask dedicated to offer respiratory protection, depending on the canister type assembled on it. For optimal protection, it is recommended to use aluminium or plastic Honeywell (Sperian) filters. They can only be used in sufficiently ventilated premises where the atmosphere contains a minimum oxygen volume of 17%.
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Full face masks, Optifit
Supplier: HONEYWELL SÉCURITÉ
Optifit is a reusable, APR class 2 full face mask dedicated to offer respiratory protection, depending on the filter type assembled on it. For optimal protection it is recommended to use aluminium or plastic filters (Class 2). They can only be used in sufficiently ventilated premises where the atmosphere contains a minimum oxygen volume of 17%.
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Rotor Assembly with Labware Kit, Avanti JS-5
Supplier: Beckman Coulter
JS-5.0 Swinging-bucket rotor assembly with labware kit, anodized aluminum. Four-place swinging bucket rotor. Includes rotor body and lid with four removable buckets and labware kit: (BECM369257), cover gasket red, for use without liners (set of 4) (BECM369261), cover gasket with liners, green (set of 4) (BECM368148), air-vent filter (set of 60) (BECM367891), spatula, 2 cup racks 4 J-wide cups and cup covers with plugs.
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VWR®, Test Tubes Racks
Supplier: VWR Collection
Nylon, glass fibre reinforced.
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Soxhlet extractors, flanged extractor head
Supplier: BUCHI
Borosilicate glass.
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Micro extraction by packed sorbent (MEPS™)
Supplier: Trajan Scientific and Medical
Micro Extraction by Packed Sorbent (MEPS™) is a new development in the field of sample preparation by SPE (solid phase extraction). The MEPS™ product consists of two parts, the MEPS™ syringe and the MEPS™ Barrel Insert and Needle assembly (BIN). The MEPS™ approach to sample preparation is suitable for reversed phases, normal phases, mixed mode and ion exchange chemistries. Because MEPS™ BINs can be used for sample volumes as small as 10 µl it makes them particularly well suited to on-line use with LC-MS analysis of volume limited samples.
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Xonachips® Cell Culture Plates
Supplier: LIEFERSERVICE UND LOGISTIK
XonaChips® are pre-assembled and pre-bonded, making them easier-to-use than our original silicone devices. XonaChips® are optically transparent and ideal for fluorescence live imaging. XonaChips® improve long-term culture of primary neurons and are especially useful for culturing human stem cell-derived neurons, providing better cell attachment and long-term growth.
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Human recombinant uroplakin 2 (from cells)
Supplier: ProSci Inc.
Uroplakin-2 is a single-pass type I membrane protein that belongs to the uroplakin-2 family. Uroplakin-2 is a component of the asymmetric unit membrane (AUM) and expressed in the ureter, a highly specialized biomembrane elaborated by terminally differentiated urothelial cells. Uroplakin-2 forms heterodimer with UPK1A that is necessary for exiting out of the endoplasmic reticulum (ER). Uroplakin-2 may play an important role in regulating the assembly of the AUM. AUM is believed to strengthen the urothelium by preventing cell rupture during bladder distention.
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Dropper caps for storage bottles, child resistant
Supplier: Hach
Dropper cap, with 0,5 and 1,0 ml marks on glass barrel
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Anti-DNM1 Rabbit Polyclonal Antibody
Supplier: Bioss
Dynamin I is a GTPase enzyme required for the retrieval of synaptic vesicles after exocytosis and functions in endocytosis by stimulating assembly of invaginating synaptic vesicles (1). Dynamin I is phosphorylated in nerve terminals exclusively in the cytosolic compartment and in vitro by protein kinase C (PKC) (2–5). The phosphorylation site in PKC-phosphorylated Dynamin I is a single site at Serine 795, which is located near a binding site for the SH3 domain of p85, the regulatory subunit of phosphatidylinositol 3-kinase (2–5). Dephosphorylation is required for synaptic vesicle retrieval, suggesting that phosphorylation affects the subcellular localization of Dynamin I (5). Mouse, rat and human Dynamin I are phosphorylated on serine residues, including Ser 778, by Cdk5, regulating PACSIN1 recruitment and enabling synaptic vesicle endocytosis.
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Anti-DNM1 Rabbit Polyclonal Antibody (FITC (Fluorescein Isothiocyanate))
Supplier: Bioss
Dynamin I is a GTPase enzyme required for the retrieval of synaptic vesicles after exocytosis and functions in endocytosis by stimulating assembly of invaginating synaptic vesicles (1). Dynamin I is phosphorylated in nerve terminals exclusively in the cytosolic compartment and in vitro by protein kinase C (PKC) (2–5). The phosphorylation site in PKC-phosphorylated Dynamin I is a single site at Serine 795, which is located near a binding site for the SH3 domain of p85, the regulatory subunit of phosphatidylinositol 3-kinase (2–5). Dephosphorylation is required for synaptic vesicle retrieval, suggesting that phosphorylation affects the subcellular localization of Dynamin I (5). Mouse, rat and human Dynamin I are phosphorylated on serine residues, including Ser 778, by Cdk5, regulating PACSIN1 recruitment and enabling synaptic vesicle endocytosis.
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Anti-DNM1 Rabbit Polyclonal Antibody (Cy7®)
Supplier: Bioss
Dynamin I is a GTPase enzyme required for the retrieval of synaptic vesicles after exocytosis and functions in endocytosis by stimulating assembly of invaginating synaptic vesicles (1). Dynamin I is phosphorylated in nerve terminals exclusively in the cytosolic compartment and in vitro by protein kinase C (PKC) (2–5). The phosphorylation site in PKC-phosphorylated Dynamin I is a single site at Serine 795, which is located near a binding site for the SH3 domain of p85, the regulatory subunit of phosphatidylinositol 3-kinase (2–5). Dephosphorylation is required for synaptic vesicle retrieval, suggesting that phosphorylation affects the subcellular localization of Dynamin I (5). Mouse, rat and human Dynamin I are phosphorylated on serine residues, including Ser 778, by Cdk5, regulating PACSIN1 recruitment and enabling synaptic vesicle endocytosis.
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Anti-DNM1 Rabbit Polyclonal Antibody (Cy5®)
Supplier: Bioss
Dynamin I is a GTPase enzyme required for the retrieval of synaptic vesicles after exocytosis and functions in endocytosis by stimulating assembly of invaginating synaptic vesicles (1). Dynamin I is phosphorylated in nerve terminals exclusively in the cytosolic compartment and in vitro by protein kinase C (PKC) (2–5). The phosphorylation site in PKC-phosphorylated Dynamin I is a single site at Serine 795, which is located near a binding site for the SH3 domain of p85, the regulatory subunit of phosphatidylinositol 3-kinase (2–5). Dephosphorylation is required for synaptic vesicle retrieval, suggesting that phosphorylation affects the subcellular localization of Dynamin I (5). Mouse, rat and human Dynamin I are phosphorylated on serine residues, including Ser 778, by Cdk5, regulating PACSIN1 recruitment and enabling synaptic vesicle endocytosis.
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Anti-DNM1 Rabbit Polyclonal Antibody (Cy3®)
Supplier: Bioss
Dynamin I is a GTPase enzyme required for the retrieval of synaptic vesicles after exocytosis and functions in endocytosis by stimulating assembly of invaginating synaptic vesicles (1). Dynamin I is phosphorylated in nerve terminals exclusively in the cytosolic compartment and in vitro by protein kinase C (PKC) (2–5). The phosphorylation site in PKC-phosphorylated Dynamin I is a single site at Serine 795, which is located near a binding site for the SH3 domain of p85, the regulatory subunit of phosphatidylinositol 3-kinase (2–5). Dephosphorylation is required for synaptic vesicle retrieval, suggesting that phosphorylation affects the subcellular localization of Dynamin I (5). Mouse, rat and human Dynamin I are phosphorylated on serine residues, including Ser 778, by Cdk5, regulating PACSIN1 recruitment and enabling synaptic vesicle endocytosis.
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Anti-DNM1 Rabbit Polyclonal Antibody (HRP (Horseradish Peroxidase))
Supplier: Bioss
Dynamin I is a GTPase enzyme required for the retrieval of synaptic vesicles after exocytosis and functions in endocytosis by stimulating assembly of invaginating synaptic vesicles (1). Dynamin I is phosphorylated in nerve terminals exclusively in the cytosolic compartment and in vitro by protein kinase C (PKC) (2–5). The phosphorylation site in PKC-phosphorylated Dynamin I is a single site at Serine 795, which is located near a binding site for the SH3 domain of p85, the regulatory subunit of phosphatidylinositol 3-kinase (2–5). Dephosphorylation is required for synaptic vesicle retrieval, suggesting that phosphorylation affects the subcellular localization of Dynamin I (5). Mouse, rat and human Dynamin I are phosphorylated on serine residues, including Ser 778, by Cdk5, regulating PACSIN1 recruitment and enabling synaptic vesicle endocytosis.
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